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Effect of troglitazone on radiation sensitivity in cervix cancer cells

机译:曲格列酮对子宫颈癌细胞辐射敏感性的影响

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Purpose Troglitazone (TRO) is a peroxisome proliferator-activated receptor γ (PPARγ) agonist. TRO has antiproliferative activity on many kinds of cancer cells via G1 arrest. TRO also increases Cu2+/Zn2+-superoxide dismutase (CuZnSOD) and catalase. Cell cycle, and SOD and catalase may affect on radiation sensitivity. We investigated the effect of TRO on radiation sensitivity in cancer cells in vitro. Materials and Methods Three human cervix cancer cell lines (HeLa, Me180, and SiHa) were used. The protein expressions of SOD and catalase, and catalase activities were measured at 2-10 μM of TRO for 24 hours. Cell cycle was evaluated with flow cytometry. Reactive oxygen species (ROS) was measured using 2',7'-dichlorofluorescin diacetate. Cell survival by radiation was measured with clonogenic assay. Results By 5 μM TRO for 24 hours, the mRNA, protein expression and activity of catalase were increased in all three cell lines. G0-G1 phase cells were increased in HeLa and Me180 by 5 μM TRO for 24 hours, but those were not increased in SiHa. By pretreatment with 5 μM TRO radiation sensitivity was increased in HeLa and Me180, but it was decreased in SiHa. In Me180, with 2 μM TRO which increased catalase but not increased G0-G1 cells, radiosensitization was not observed. ROS produced by radiation was decreased with TRO. Conclusion TRO increases radiation sensitivity through G0-G1 arrest or decreases radiation sensitivity through catalase-mediated ROS scavenging according to TRO dose or cell types. The change of radiation sensitivity by combined with TRO is not dependent on the PPARγ expression level.
机译:目的曲格列酮(TRO)是一种过氧化物酶体增殖物激活的受体γ(PPARγ)激动剂。 TRO通过G1阻滞对多种癌细胞具有抗增殖活性。 TRO还增加了Cu 2 + / Zn 2 + -超氧化物歧化酶(CuZnSOD)和过氧化氢酶。细胞周期以及SOD和过氧化氢酶可能会影响辐射敏感性。我们调查了TRO对癌细胞体外放射敏感性的影响。材料和方法使用了三种人类宫颈癌细胞系(HeLa,Me180和SiHa)。在2-10μMTRO下测定24小时后,SOD和过氧化氢酶的蛋白质表达以及过氧化氢酶活性。用流式细胞仪评估细胞周期。使用2',7'-二氯荧光素二乙酸酯测量活性氧(ROS)。通过克隆形成测定法测量放射线的细胞存活率。结果通过5μMTRO处理24小时,所有三种细胞系的mRNA,蛋白质表达和过氧化氢酶活性均升高。在HeLa和Me180中,G0-G1期细胞通过5μMTRO增加了24小时,但是在SiHa中却没有增加。通过5μMTRO预处理,HeLa和Me180中的辐射敏感性增加,而SiHa中则降低。在Me180中,使用2μMTRO增加过氧化氢酶但不增加G0-G1细胞,未观察到放射增敏作用。 TRO降低了辐射产生的ROS。结论TRO可根据TRO剂量或细胞类型通过G0-G1阻滞提高辐射敏感性,或通过过氧化氢酶介导的ROS清除降低辐射敏感性。 TRO与TRO结合使用对辐射敏感性的变化不依赖于PPARγ表达水平。

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